The present invention relates to a gas combustion apparatus, composed by a storage tank, a combustion gas setting device, an ignition device, a housing, a combustion device and an outer tube. When the pushing rod of the adjusting unit is forwardly pushed from the bottom end of the vertical slot of the adjusting slot and is rotated into the horizontal slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, and the gas discharging valve gate is rotated in the gas adjusting valve seat, so a combustion gas supplying status is obtained and the output amount of combustion gas can be adjusted; when the pushing rod of the adjusting unit is forwardly pushed to the top end from the bottom end of the vertical slot of the adjusting slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, so the adjusting unit is released from the gas discharging valve gate, then the setting unit is rotated and the gas discharging valve gate is rotated in the gas adjusting valve seat, therefore the output amount of combustion gas of the gas discharging valve is able to be reset.
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14. A combustion gas setting device used in a gas combustion apparatus, comprises:
a storage tank, the front end of the storage tank is provided with a tank opening that communicates with a tank chamber provided inside the storage tank, the tank opening is connected to a gas discharging valve, the gas discharging valve is that a gas discharging valve gate being screw-fitted with a gas adjusting valve seat, and a gas discharging nozzle is axially extended from the gas discharging valve gate;
a setting unit, the setting unit is connected to the gas discharging valve gate;
an adjusting unit, the adjusting unit is provided adjacent to the setting unit and a connecting hole provided at the bottom end of the adjusting unit is connected to the gas discharging valve gate, so after the gas discharging nozzle is passed through the top end of the connecting hole, the gas discharging nozzle is connected to a gas conveying tube, a first resilient member is provided between the adjusting unit and the inside of a housing, and at least one pushing rod is radially and protrudingly provided on the adjusting unit; and
the housing, an adjusting slot composed by a vertical and a horizontal slots is provided on the housing with respect to the location where the pushing rod is provided so the pushing rod can be exposed;
when the pushing rod of the adjusting unit is forwardly pushed from the bottom end of the vertical slot of the adjusting slot and is rotated into the horizontal slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, and the gas discharging valve gate is rotated in the gas adjusting valve seat, so a combustion gas supplying status is obtained and the output amount of combustion gas can be adjusted; when the pushing rod of the adjusting unit is forwardly pushed to the top end from the bottom end of the vertical slot of the adjusting slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, so the adjusting unit is released from the gas discharging valve gate, then the setting unit is rotated and the gas discharging valve gate is rotated in the gas adjusting valve seat, therefore the output amount of combustion gas of the gas discharging valve is able to be reset.
1. A gas combustion apparatus, comprises:
a storage tank, a tank chamber is provided in the storage tank, a hollow tank seat is radially and protrudingly provided on the storage tank, a connecting section provided at the front end of the storage tank is axially provided with a tank opening that communicates with the tank chamber, the tank opening is connected to a gas discharging valve, the gas discharging valve is that a gas discharging valve gate being screw-fitted with a gas adjusting valve seat, and a gas discharging nozzle is axially extended from the gas discharging valve gate;
a combustion gas setting device, connecting holes of a setting unit and an adjusting unit provided adjacent to the setting unit are respectively connected to the gas discharging valve gate, so after the gas discharging nozzle is passed through the top ends of the connecting holes, the gas discharging nozzle is connected to a gas conveying tube, a first resilient member is provided between the adjusting unit and the inside of the housing, and at least one pushing rod is radially and protrudingly provided on the adjusting unit;
an ignition device having a sliding member, the rear end of the sliding member is connected to the tank seat and is disposed against a piezoelectric device, the piezoelectric device has a conductive wire extending to a combustion device;
a housing composed by two housing members engaging with each other and provided in front of the storage tank for covering the combustion gas setting device, an adjusting slot composed by a vertical and a horizontal slots is provided on the housing with respect to the location where the pushing rod is provided so the pushing rod can be exposed, a key slot is formed at the periphery of the housing and is served to receive the sliding member, a housing tenon is extended from the front end of the housing, the center of the housing tenon has a positioning hole;
the combustion device is fastened on the positioning hole via a retaining tube, the rear end of the retaining tube is connected to the gas conveying tube and the front end of the retaining tube is connected to a mixing tube, the front end of the mixing tube is provide with a flame nozzle; and
an outer tube, after the outer tube is connected to a connecting ring, the connecting ring is connected to the housing tenon, so the flame nozzle is disposed at the front end of the outer tube;
when the pushing rod of the adjusting unit is forwardly pushed from the bottom end of the vertical slot of the adjusting slot and is rotated into the horizontal slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, and the gas discharging valve gate is rotated in the gas adjusting valve seat, so a combustion gas supplying status is obtained and the output amount of combustion gas can be adjusted; when the pushing rod of the adjusting unit is forwardly pushed to the top end from the bottom end of the vertical slot of the adjusting slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, so the adjusting unit is released from the gas discharging valve gate, then the setting unit is rotated and the gas discharging valve gate is rotated in the gas adjusting valve seat, therefore the output amount of combustion gas of the gas discharging valve is able to be reset.
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3. The gas combustion apparatus as claimed in
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5. The gas combustion apparatus as claimed in
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9. The gas combustion apparatus as claimed in
10. The gas combustion apparatus as claimed in
a latching member, a pressing button is protrudingly provided on the top end of the latching member and the pressing button is passed through the button hole of the housing, a buckling tenon is respectively and horizontally extended from a left and a right sides of a stopping block provided at the bottom of the latching member, and a second resilient member is provided in a concave hole provided at the bottom end of the stopping block, the second resilient member is provided in a rack slot provided inside the housing;
two parallel rack sheets are extended from the front end of the sliding member and a guiding slot is defined between the two rack sheets so the pressing button can be exposed, and two buckling slots defined as a pair are respectively, concavely and longitudinally provided on the two rack sheets, the buckling slots are served to buckle the buckling tenons so a locking status is obtained on the sliding member; when the pressing button is pressed, the second resilient member is compressed and the buckling tenons are released from the buckling slots, so the locking status formed on the sliding member is released and the sliding member is able to be backwardly pressed.
11. The gas combustion apparatus as claimed in
12. The gas combustion apparatus as claimed in
13. The gas combustion apparatus as claimed in
15. The combustion gas setting device used in the gas combustion apparatus as claimed in
16. The combustion gas setting device used in the gas combustion apparatus as claimed in
17. The combustion gas setting device used in the gas combustion apparatus as claimed in
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1. Field of the Invention
The present invention relates to a gas combustion apparatus, more particularly to a gas combustion apparatus having combustion gas setting device, the combustion gas setting device is not only able to control the transportation and the output amount of the combustion gas, but also to reset the output amount of the combustion gas of the gas discharging valve, so the pressure differences inside the storage tank due to different operating locations can be accommodated.
2. Description of Related Art
Fire is a must-have matter in human being's daily life, with fire we can cook food, have lights, even operating casting, melting or welding metals. Take a gas combustion apparatus, a refillable lighter or a portable gas stove, for instance, liquefied gas is adopted so operations of ignition and cooking can be processed. So far, the gas combustion apparatus still has a role that is hard to be replaced.
A combustion gas control device is one of the important units for a gas combustion apparatus, and has functions of transportation of combustion gas, continuous supply of combustion gas and adjusting output amount of combustion gas. A conventional combustion gas control device of a gas combustion apparatus is illustrated with the Taiwan Patent No. M306647, corresponding to the U.S. patent application Ser. No. 11/590,911, filed by the applicant of the present invention, when a sliding member is pressed and downwardly moved, an active member provided at one end of the sliding member is driven to push a passive sheet of a swing member, so a connecting sheet provided at the other end of the passive sheet is raised, so a gas discharging valve fastened on a top end of a storage tank is stretched so as to obtain a combustion gas supplying status. If a combustion gas continuously supplying status is desired to be remained, a continue switch provided on a housing is pulled, so a stopping block provided on one end of the continue switch is laterally moved to a location that is on top of a convex sheet of the sliding member, so the sliding member is not able to be recovered to the initial location, the combustion gas continuously supplying status is therefore obtained. The gas discharging valve is that a gas discharging valve gate being connected to a gas adjusting valve seat provide below the gas discharging valve gate, an adjusting button is provided on one lateral end of the gas discharging valve gate and is connected to a Y-shaped positioning member, and the positioning member is exposed outside of the housing, when the adjusting button is operated, the gas discharging valve can supply combustion gas within a preset output range.
In view of the combustion gas control device of the gas combustion apparatus disclosed above, operations of transportation of combustion gas, continuous supply of combustion gas and adjustment of output amount of combustion gas are processed by relative units and have to be individually operated, so operation complexity is increased. In fact, various storage tanks for storing combustion gas or fuel, e.g. a storing device for liquefied gas, are necessary because it can continuously provide combustion material to a combustion device for facilitate the combustion operation.
Due to different zones on the earth, for example zones at higher latitudes, the weather there is colder so the inner storing pressure of gas storing tank is lower, this is a negative factor for the gas and would result in the output amount of combustion gas of the gas discharging valve is not enough, therefore an operation of igniting combustion gas at a combustion section is not able to be smoothly processed. What's more, there are pressure differences between canned gases sold in different zones of the world, so the pressure of filled liquefied gas may be too much or too less. Basically, an output range of combustion gas of a gas discharging valve of a gas combustion apparatus is preset before being shipped out, so the output amount of the gas discharging valve is not able to be reset to accommodate the pressure differences of liquefied gases stored in gas storage tanks. The adjusting button is only capable of adjusting the output amount of the combustion gas of the gas discharging valve within the preset range, and the initial setting of the gas discharging valve is not able to be adjusted.
The applicant of the present invention has devoted himself to design and commercially distribute gas combustion apparatuses and combustion tools, with a hope to overcome the disadvantages that output amount of combustion gas of a gas discharging valve is not able to be reset for accommodating pressure differences of liquefied gases stored in gas storage tanks, after try and error, the present invention “Gas combustion apparatus and combustion gas setting device thereof” is provided.
One object of the present invention is to provide a gas combustion apparatus having combustion gas setting device, the combustion gas setting device can be served to reset an initial setting of a gas discharging valve for accommodating pressure differences of liquefied gases stored in storage tanks.
Another object of the present invention is to a gas combustion apparatus, and only one step is needed to control the transportation and the continuous supply and the output amount of the combustion gas.
For achieving the objects mentioned above, one solution provided by the present invention is to provide a gas combustion apparatus, comprises: a storage tank, a tank chamber is provided in the storage tank, a hollow tank seat is radially and protrudingly provided on the storage tank, a connecting section provided at the front end of the storage tank is axially provided with a tank opening that communicates with the tank chamber, the tank opening is connected to a gas discharging valve, the gas discharging valve is that a gas discharging valve gate being screw-fitted with a gas adjusting valve seat, and a gas discharging nozzle is axially extended from the gas discharging valve gate; a combustion gas setting device, a connecting hole of a setting unit and a connecting hole of an adjusting unit are respectively connected to the gas discharging valve gate, so after the gas discharging nozzle is passed through the top end of the connecting holes, the gas discharging nozzle is connected to a gas conveying tube, a first resilient member is provided between the adjusting unit and the inside of the housing, and at least one pushing rod is radially and protrudingly provided on the adjusting unit; an ignition device having a sliding member, the rear end of the sliding member is connected to the tank seat and is disposed against a piezoelectric device, the piezoelectric device has a conductive wire extending to a combustion device; a housing composed by two housing members engaging with each other and provided in front of the storage tank for covering the combustion gas setting device, an adjusting slot composed by a vertical and a horizontal slots is provided on the housing with respect to the location where the pushing rod is provided so the pushing rod can be exposed, a key slot is formed at the periphery of the housing and is served to receive the sliding member, a housing tenon is extended from the front end of the housing, the center of the housing tenon has a positioning hole; a combustion device, the combustion device is fastened on the positioning hole via a retaining tube, the rear end of the retaining tube is connected to the gas conveying tube and the front end of the retaining tube is connected to a mixing tube, the front end of the mixing tube is provide with a flame nozzle; and an outer tube, after the outer tube is connected to a connecting ring, the connecting ring is connected to the housing tenon, so the flame nozzle is disposed at the front end of the outer tube; when the pushing rod of the adjusting unit is forwardly pushed from the bottom end of the vertical slot of the adjusting slot and is rotated into the horizontal slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, and the gas discharging valve gate is rotated in the gas adjusting valve seat, so a combustion gas supplying status is obtained and the output amount of combustion gas can be adjusted; when the pushing rod of the adjusting unit is forwardly pushed to the top end from the bottom end of the vertical slot of the adjusting slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, so the adjusting unit is released from the gas discharging valve gate, then the setting unit is rotated and the gas discharging valve gate is rotated in the gas adjusting valve seat, therefore the output amount of combustion gas of the gas discharging valve is able to be reset.
Another object of the present invention is to provide a combustion gas setting device capable of resetting initial settings of a gas discharging valve for accommodating pressure difference of liquefied gas stored in a storage tank.
Another solution provided by the present invention is to provide a combustion gas setting device used in a gas combustion apparatus, comprises a storage tank, the front end of the storage tank is provided with a tank opening that communicates with a tank chamber provided inside the storage tank, the tank opening is connected to a gas discharging valve, the gas discharging valve is that a gas discharging valve gate being screw-fitted with a gas adjusting valve seat, and a gas discharging nozzle is axially extended from the gas discharging valve gate; a setting unit, the setting unit is connected to the gas discharging valve gate; an adjusting unit, the adjusting unit is provided adjacent to the setting unit and a connecting hole provided at the bottom end of the adjusting unit is connected to the gas discharging valve gate, so after the gas discharging nozzle is passed through the top end of the connecting hole, the gas discharging nozzle is connected to a gas conveying tube, a first resilient member is provided between the adjusting unit and the inside of the housing, and at least one pushing rod is radially and protrudingly provided on the adjusting unit; and a housing, an adjusting slot composed by a vertical and a horizontal slots is provided on the housing with respect to the location where the pushing rod is provided so the pushing rod can be exposed; when the pushing rod of the adjusting unit is forwardly pushed from the bottom end of the vertical slot of the adjusting slot and is rotated into the horizontal slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, and the gas discharging valve gate is rotated in the gas adjusting valve seat, so a combustion gas supplying status is obtained and the output amount of combustion gas can be adjusted; when the pushing rod of the adjusting unit is forwardly pushed to the top end from the bottom end of the vertical slot of the adjusting slot, the first resilient member is compressed and the gas discharging nozzle is stretched by the adjusting unit, so the adjusting unit is released from the gas discharging valve gate, then the setting unit is rotated and the gas discharging valve gate is rotated in the gas adjusting valve seat, therefore the output amount of combustion gas of the gas discharging valve is able to be reset.
As shown from
The storage tank 1 is served to store liquefied gas, a bottom end of a tank body 11 is provided with a tank cover 12, the bottom end of the tank cover 12 is connected to a filling valve 13, as shown in
A connecting section 112 provided at the top end of the tank body 11 is axially provided with a tank opening 113 that communicates with the tank chamber 111 for accommodating and positioning a gas discharging valve 15. A concave neck section 114 is defined between the connecting section 112 and the tank body 11 and is served to connect to the housing 4. A tank seat 115 is radially and protrudingly provided on the tank body 11 and an accommodating chamber 116 is defined within the tank seat 115, inner walls of the tank seat 115 that oppositely provided are respectively provided with a jointing section 117, e.g. a sliding slot, for accommodating and positioning the ignition device 3.
As shown in
The combustion gas setting device 2 is composed by a setting unit 21, an adjusting unit 22 and a first resilient member 23, a central axial hole 211 of the setting unit 21 is connected to the gas discharging valve gate 151, and the periphery of the setting unit 21 is provided with plural pulling slots 212. A connecting hole 221 is axially provided on the adjusting unit 22 and is also connected to the gas discharging valve gate 151. From top to bottom, the connecting hole 221 is in sequence and protrudingly provided with a connecting section 221a, e.g. plural convex teeth, and a releasing section 221b, the convex teeth of the connecting section 221a are engaged with concave slots of the gas discharging valve gate 151, so that after the gas discharging nozzle 153 is passed through a nozzle hole 221c provided on the top end of the connecting hole 221, the gas discharging nozzle 153 is connected to a connecting member 222, e.g. a buckling ring. When the adjusting unit 22 is axially moved, a releasing status is defined by the gas discharging valve gate 151 and the releasing section 221b or an engaging status is defined when the gas discharging valve gate 151 is engaged with the connecting section 221a, so the gas discharging nozzle 153 is stretched for supplying gas or is retracted for terminating gas supply.
In order to provided an automatic recovery function to the adjusting unit 22 after the adjusting unit 22 is axially moved, the first resilient member 23, e.g. a spring, is provided between the adjusting unit 22 and the housing 4, and the inside of the resilient member 23 can allow the gas discharging nozzle 153 and the gas conveying tube 154 pass through so the gas transportation is not interfered. And at least one pushing rod 223 is radially and protrudingly provided on the adjusting unit 22, a pair of pushing rods 223 that oppositely protrude are preferably provided, so the pushing rods 223 are able to be exposed via adjusting slots 411 of the housing 4 for operations of axial movements and rotations.
The ignition device 3 includes a sliding member 31, a piezoelectric device 32 and a latching member 33. A frame-shaped member 312 is extruded from a rear end of a pressing sheet 311 of the sliding member 31, the frame-shaped member 312 is connected to the accommodating chamber 116 formed in the tank seat 115 and is provided against the piezoelectric device 32, so after the sliding member 31 is released, the sliding member 31 can be automatically recovered and a locking status is automatically defined. For having a smooth sliding effect, positioning sections 313, e.g. sliding tenons, are provided on the frame-shaped member 312 with respect to the location where the jointing sections 117, e.g. sliding slots, are provided, so when engaged, the sliding member 31 can smoothly slide in the accommodating chamber 116 for pressing the piezoelectric device 32. The front end of the pressing sheet 311 is provided with two parallel rack sheets 314 and a guiding slot 315 is defined between the two rack sheets 314, so the latching member 33 can be accommodated or can be longitudinally moved. Two buckling slots 316 defined as a pair are respectively, concavely and longitudinally provided on the two rack sheets 314, so operations of locking or releasing the latching member 33 can be defined with respect to the buckling slots 316.
The piezoelectric device 32 is a conventional piezoelectric device and is provided in the accommodating chamber 116 formed in the tank seat 115, and the piezoelectric device 32 can be pressed by the sliding member 31 so a conductive wire 321 thereof is extended to the combustion device 5 for igniting the mixed combustion gas.
The latching member 33 is a reverse-T shaped key member, a pressing button 331 is protrudingly provided on the top end of the latching member 33, a buckling tenon 333 is respectively and horizontally extended from a left and a right sides of a stopping block 332 provided at the bottom of the latching member 33, and a second resilient member 335, e.g. a spring, is provided in a concave hole 334 provided at the bottom end of the stopping block 332. As shown in
The housing 4 is mainly composed by two cover members 41 engaging with each other, and is disposed in front of the storage tank 1, a T-shaped adjusting slot 411 is respectively provided on the two cover members 41 with respect to the locations where the pushing rods 223 of the adjusting unit 22 are provided, e.g. a horizontal slot being communicated with one lateral side of a vertical slot, so each of the pushing rods 223 can be installed in the corresponding adjusting slot 411 and be exposed outside of the housing 4. The top end of the housing 4 is respectively provided with a key slot 412 and a button hole 413 for respectively accommodating the rack sheets 314 of the sliding member 31 and for allowing the pressing button 331 of the latching member 33 to be exposed. A rack slot 414 is provided inside the housing 4 and below the button hole 413 for accommodating the second resilient member 335. A pair of neck sheets 415 are extended from the rear portion of the housing 4 so the concave neck section 114 of the storage tank 1 can be mounted therein. A housing tenon 42 is extended from the front portion of the housing 4, the central and the lateral sides of the housing tenon 42 are respectively provided with a positioning hole 421 and a slit hole 422, so the combustion device 5 and a guiding wire 322 can be accommodated and positioned, and a housing thread 423 is provided on the surface of the housing tenon 42 for being connected with combustion tools.
The housing 4 is further provided with a step-shaped gas supply suspending button 43 which is extended from a button hole 416 preset on the housing 4. When the gas supply suspending button 43 is pressed, the bottom end thereof presses the gas conveying tube 154 and the gas conveying tube 154 is therefore flatten to stop the combustion gas supply. A flame on the combustion device 5 is snuffed out due to the described operation, then the gas supply suspending button 43 is released and is recovered due to the elasticity of the gas conveying tube 154, thus the combustion gas can continue pass through the gas conveying tube 154 and the combustion device 5, and the combustion gas is able to be supplied to a heating member 71 provided inside a soldering iron head 7 so as to obtain a smoldering status. A Y-shaped supporting rack 44 is pivotally connected to a rack slot 417 concavely provided at the bottom end of the housing 4. When the gas combustion apparatus is not in use, the supporting rack 44 can be forwardly rotated to open for supporting the gas combustion apparatus.
As shown in
To utilize the present invention as a gas combustion apparatus, the outer tube 6 is connected to a connecting ring 45, then a connecting operation is processed on the connecting ring 45, for example an inner thread 451 of the connecting ring 45 is screwed-fitted with the housing thread 423 of the housing tenon 42, so the flame nozzle 53 is disposed on the front end of the outer tube 6. An air venting slot 61 is provided on the outer tube 6 with respect to the location where the air introducing hole 521 is provided to facilitate the air introducing operation; after the latching member 33 is pressed to release the locking status, the sliding member 31 is pressed to compress the piezoelectric device 32 so the conductive wire 321 is in contact with the retaining tube 51, high voltage static electricity is passed through the mixing tube 52 and is transferred via the flame nozzle 53, thus a spark is generated between the flame nozzle 53 and the outer tube 6 to ignite the mixed combustion gas jetted by the flame nozzle 53, so a gas combustion apparatus is obtained. As shown in
The front end of the outer tube 6 can be provided with a soldering iron head 7, the inside of the soldering iron head 7 has a heating member 71 and a retaining ring 72, so the combustion flame can be served to heat and burn the heating member 71, as shown in
Referring to
Referring to
The features of the present invention is that the adjusting unit of the combustion gas setting device is not only able to control the transportation and the output amount of the combustion gas, but also to reset the output amount of the combustion gas of the gas discharging valve via adjusting the setting unit, so the pressure differences inside the storage tank due to different zones can be accommodated; and only one step is needed for the adjusting unit to directly control the transportation and the continuous supply and preset output amount of the combustion gas; the gas combustion apparatus provided by the present invention is small in volume and easy to carry around; according to actual needs, the gas combustion apparatus provided by the present invention can adopt combustion tools, e.g. a combustion device or a gas soldering iron; a manual unlocking and an automatic locking functions are provided between the ignition device and the housing so children can be prevented from accidentally using; and by providing a gas supply suspending button, the combustion gas supply can be temporally terminated, so after the flame of the combustion device is snuffed out, the combustion gas can still be supplied to the heating member provided inside the soldering iron head.
It is to be understood, however, that even though numerous characteristics and advantages of the present embodiments have been set forth in the foregoing description, together with details of the structures and functions of the embodiments, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
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